One disclosed lifting apparatus includes a base, a receiving portion, and a first pair of laterally offset arms. The base has proximal and distal ends, and the laterally offset arms are rotatably coupled to the base for movement between lowered and raised positions. The arms are also rotatably coupled to the receiving portion, and the receiving portion is relatively near the base distal end when the arms are at the lowered position. The arms of the first pair of arms do not share a common axis of rotation with one another. Further, a height of the first pair of arms when at the lowered position is less than the sum of: (a) a thickness of one arm of the first pair of arms; (b) a thickness of the other arm of the first pair of arms; and (c) a height of the base at the distal end.
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12. A low-clearance lifting apparatus, comprising:
a base having a proximal end and a distal end;
a receiving portion; and
a first pair of laterally offset arms rotatably coupled to the base for movement between lowered and raised positions, the first pair of arms being rotatably coupled to the receiving portion, the receiving portion being relatively near the base distal end when the first pair of arms is at the lowered position, the arms of the first pair of arms not sharing a common axis of rotation with one another;
wherein a height of the first pair of arms when at the lowered position is less than the sum of:
(a) a thickness of one arm of the first pair of arms;
(b) a thickness of the other arm of the first pair of arms; and
(c) a height of the base at the distal end.
1. A lifting apparatus, comprising:
a base having a proximal end, a distal end, a first pair of generally parallel laterally offset channels with open top ends, and a second pair of generally parallel laterally offset channels with open top ends;
a first pair of rotatable arms extending inside the first pair of channels;
a second pair of rotatable arms extending inside the second pair of channels; one arm of the first pair of arms and one arm of the second pair of arms rotating about a generally common first axis; the other arm of the first pair of arms and the other arm of the second pair of arms rotating about a generally common second axis; the first and second pairs of arms being rotatable in concert between lowered and raised positions; the arms of the first pair of arms being generally laterally adjacent one another when at the lowered position; the arms of the second pair of arms being generally laterally adjacent one another when at the lowered position;
a receiving portion; the one arm of the first pair of arms and the one arm of the second pair of arms being rotatably coupled to the receiving portion about a generally common third axis; the other arm of the first pair of arms and the other arm of the second pair of arms being rotatably coupled to the receiving portion about a generally common fourth axis; the first and second axes being separated by a distance generally equal to a distance between the third and fourth axes.
2. The lifting apparatus of
an imaginary plane passing through the first and second axes remains generally horizontal; and
an imaginary plane passing through the third and fourth axes remains generally horizontal.
3. The lifting apparatus of
the arms of the first pair of arms are telescopic; and
the arms of the second pair of arms are telescopic.
4. The lifting apparatus of
5. The lifting apparatus of
6. The lifting apparatus of
7. The lifting apparatus of
the first and second tire-receiving members are each telescopic;
the first tire-receiving member is removably coupled to the first platform; and
the second tire-receiving member is removably coupled to the second platform.
8. The lifting apparatus of
means for moving the first and second pairs of arms between the lowered and raised positions; and
means for mechanically maintaining the first and second pairs of arms at the raised position to prevent the first and second pairs of arms from undesirably moving from the raised position to the lowered position.
9. The lifting apparatus of
10. The lifting apparatus of
11. The lifting apparatus of
a rack engageable with at least one of the arms to selectively maintain the first and second pairs of arms at the raised position to prevent the first and second pairs of arms from undesirably moving from the raised position to the lowered position;
a resilient member biasing the rack toward engaging at least one of the arms; and
a release in communication with the rack for selectively disengaging the rack to allow the first and second pairs of arms to move from the raised position to the lowered position.
13. The lifting apparatus of
a rack engageable with at least one of the arms to selectively maintain the first pair of arms at the raised position to prevent the first pair of arms from undesirably moving from the raised position to the lowered position; and
a resilient member biasing the rack toward engaging at least one of the arms; and
a release in communication with the rack for selectively disengaging the rack to allow the first pair of arms to move from the raised position to the lowered position.
14. The lifting apparatus of
15. The lifting apparatus of
the receiving portion includes first and second platforms laterally spaced from one another and each having proximal and distal ends;
the platform distal ends are closer to the base distal end than the platform proximal ends are to the base distal end; and
a distance between the platform distal ends is greater than a distance between the platform proximal ends.
16. The lifting apparatus of
17. The lifting apparatus of
(a) a thickness of one arm of the second pair of arms;
(b) a thickness of the other arm of the second pair of arms; and
(c) the height of the base at the distal end.
18. The lifting apparatus of
19. The lifting apparatus of
the receiving portion includes first and second platforms laterally spaced from one another; and
each arm of the first pair of arms is coupled to the first platform.
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The disclosed subject matter is directed to lifting apparatus, and in particular to apparatus capable of lifting low-clearance devices and selectively maintaining those devices at a lifted position.
In one embodiment, a lifting apparatus includes a base, a receiving portion, and a first pair of laterally offset arms. The base has a proximal end and a distal end, and the laterally offset arms are rotatably coupled to the base for movement between lowered and raised positions. The arms are also rotatably coupled to the receiving portion, and the receiving portion is relatively near the base distal end when the arms are at the lowered position. The arms of the first pair of arms do not share a common axis of rotation with one another. Further, a height of the first pair of arms when at the lowered position is less than the sum of: (a) a thickness of one arm of the first pair of arms; (b) a thickness of the other arm of the first pair of arms; and (c) a height of the base at the distal end.
In another embodiment, a lifting apparatus includes a base, a first pair of rotatable arms, a second pair of rotatable arms, and a receiving portion. The base has a proximal end, a distal end, a first pair of generally parallel laterally offset channels with open top ends, and a second pair of generally parallel laterally offset channels with open top ends. The first pair of rotatable arms extends inside the first pair of channels. The second pair of rotatable arms extends inside the second pair of channels. One arm of the first pair of arms and one arm of the second pair of arms rotate about a generally common first axis, and the other arm of the first pair of arms and the other arm of the second pair of arms rotate about a generally common second axis. The first and second pairs of arms are rotatable in concert between lowered and raised positions. The arms of the first pair of arms are generally laterally adjacent one another when at the lowered position, and the arms of the second pair of arms are generally laterally adjacent one another when at the lowered position. One arm of the first pair of arms and one arm of the second pair of arms is rotatably coupled to the receiving portion about a generally common third axis, and the other arm of the first pair of arms and the other arm of the second pair of arms is rotatably coupled to the receiving portion about a generally common fourth axis. The first and second axes are separated by a distance generally equal to a distance between the third and fourth axes.
The base 110 is best shown in
To aid in mobility, the base 110 may include wheels 122 and handle 124 (
Turning to the receiving portion 130, as shown for example in
Though the platforms 132, 133 may be, for example, rectangular, it may be desirable for the platforms 132, 133 to instead be L-shaped (as shown) or otherwise configured such that a distance between the platform distal ends 132b, 133b is greater than a distance between the platform proximal ends 132a, 133a. In other words, it may be desirable for the opening between the platform distal ends 132b, 133b to be greater than the opening between the platform proximal ends 132a, 133a. As shown in
As those skilled in the art will appreciate, the platforms 132, 133 may be constructed of steel, aluminum, and/or any other appropriate material, and may be formed through any appropriate processes. It may be desirable to have a non-slip material 138 at upper ends of the platforms 132, 133, as shown in
The receiving portion 130 may also include a tire-receiving member 140 operatively coupled to each platform 132, 133, and attachment between the tire-receiving members 140 and the platforms 132, 133 may be permanent or reversible (e.g., through quick-locking mechanisms, removable bolts, etc.).
Attention now being directed to the arms 150, the arms 150 (specifically denoted in the drawings by reference numbers 150a, 150b) in the first pair 154 are laterally offset from one another and respectively extend inside the first pair 114 of channels 114a, 114b, and the arms 150 (specifically denoted in the drawings by reference numbers 150c, 150d) in the second pair 155 are laterally offset from one another and respectively extend inside the second pair 115 of channels 115a, 115b. All of the arms 150 are rotatably coupled to the base 110 for movement (i.e., rotation) in concert between a lowered position 160a (
All of the arms 150 are also rotatably coupled to the receiving portion 130, causing the receiving portion 130 to move between a lowered position when the arms 150 are at the lowered position 160a and a raised position when the arms 150 are at the raised position 160b. The receiving portion 130 is relatively near the base distal end 112b when the arms 150 are at the lowered position 160a, and it may be desirable for one arm 150 of each pair 154, 155 (e.g., arm 150a and arm 150c) to rotate relative to the receiving portion 130 about a generally common axis (e.g., an axis extending in line with pin 163 at the platform distal ends 132b, 133b, shown in
It may be very desirable for a height of the first pair 154 of arms 150a, 150b when at the lowered position 160a (
As those skilled in the art will appreciate, the arms 150 may be constructed of steel, aluminum, and/or any other appropriate material, and may be formed through any appropriate processes. And, as shown in
Various means for moving the pairs 154, 155 of arms 150 between the lowered and raised positions 160a, 160b may be included. For example, a winch may be used to wind and unwind a rope or chain coupled to one of the arms 150. Or, for example, a motor and gearing may be used to rotate one of the arms 150. Or, as shown throughout the drawings, a pump 170 (e.g., a hydraulic or pneumatic pump) may be in communication with at least one of the arms 150 to selectively move the arms 150 between the lowered and raised positions 160a, 160b. In the embodiment shown in the drawings, the pump 170 moves a piston 172 (
Various means may also be included for mechanically maintaining the arms 150 at the raised position 160b to prevent the arms 150 from undesirably moving from the raised position 160b to the lowered position 160a. For example, as shown in
In use, a device (or “load”) to be lifted is placed atop the receiving portion 130. For example, tires of a lawn tractor may be received by the tire-receiving members 140. Due to the proximity of the tire-receiving members 140 to the ground (made possible, for example, by the arms 150 being laterally offset and the tire-receiving members 140 extending below the platforms 132, 133 as discussed above), the tires may be easily received in the tire-receiving members 140. If necessary, the tire-receiving members 140 may be telescopically extended to correspond to the spacing between the tires. The configuration and spacing of the platforms 132, 133 may avoid interference with a mower deck of the lawn tractor, and it should be appreciated that other low-clearance devices may accordingly be received as well.
It should also be understood that the receiving portion 130 may be utilized with the tire-receiving members 140 removed, ° as discussed above and shown in
To raise the load, the pump 170 may be actuated (such as through the foot pedal 178), causing the piston 172 to extend (
To lower the load, the release 188 (
Many different arrangements of the various components depicted, as well as components not shown, are possible without departing from the spirit and scope of the present invention. Embodiments of the present invention have been described with the intent to be illustrative rather than restrictive. Alternative embodiments will become apparent to those skilled in the art that do not depart from its scope. A skilled artisan may develop alternative means of implementing the aforementioned improvements without departing from the scope of the present invention. Further, it will be understood that certain features and subcombinations are of utility and may be employed without reference to other features and subcombinations and are contemplated within the scope of the claims. Moreover, various steps set forth herein may be carried out in orders that differ from those set forth herein without departing from the scope of the present methods. The description should not be restricted to the above embodiments, but should be measured by the following claims.
Gann, Casey R., Gillespie, Peter K.
Patent | Priority | Assignee | Title |
10351149, | Mar 31 2016 | Mi-Jack Products, Inc.; MI-JACK PRODUCTS, INC | Rail car lifting device |
11760430, | Nov 08 2019 | Lift assembly for a vehicle | |
9637362, | Jun 26 2013 | Larin Corporation | Jack for lifting small utility vehicles |
D912361, | Apr 25 2019 | Shinn Fu Company of America, Inc.; SHINN FU COMPANY OF AMERICA, INC | Diesel particulate filter lift |
Patent | Priority | Assignee | Title |
2361544, | |||
4984657, | Jul 28 1989 | Service lift stand apparatus for small tractors | |
5271603, | Mar 02 1993 | Vehicle jack | |
6050546, | Aug 31 1998 | HORIZON GLOBAL AMERICAS INC | Small vehicle lift |
6241227, | Feb 11 1999 | GSLE SUBCO L L C | Cutting edge handler for plows and graders |
6561487, | Oct 27 2000 | LARIN CORPORATION, A CALIFORNIA CORPORATION | Adjustable stabilizer for jacks |
6769668, | Oct 27 2000 | Larin Corporation | Lifting device assembly |
6966542, | Feb 28 2004 | BETTENCOURT, LELAND A | Motorcycle lift |
6986503, | May 23 2002 | CALA, SALVATORE | Power unit for use with a jack stand that is convertible into a load-lifting jack |
7137615, | Mar 31 2004 | Alltrade Tools LLC | Jack |
20040096306, | |||
20100207085, | |||
D344835, | Oct 03 1991 | Lifting device | |
D346255, | May 21 1993 | Gray Automotive Products Company | Swing arm short-rise vehicle lift |
D378155, | Jul 31 1995 | Motorcycle lift |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Apr 20 2010 | Shinn Fu Corporation | (assignment on the face of the patent) | / | |||
Apr 17 2012 | GANN, CASEY R | Shinn Fu Corporation | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 028219 | /0438 | |
Apr 18 2012 | GILLESPIE, PETER K | Shinn Fu Corporation | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 028219 | /0438 |
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